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A General Recipe for Nondispersive Optical Activity in Bilayer Chiral Metamaterials

机译:双层手性超材料中非分散光学活性的一般配方

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摘要

By mimicking broken mirror symmetry of naturally existing chiral materials, and exploiting even stronger magnetoelectric coupling, large optical activity has been realized in chiral metamaterials over the past decade. Nevertheless, most of chiral metamaterials demonstrated so far exhibit highly dispersive optical activity due to their resonant response, which inevitably leads to a narrow operating bandwidth in terms of the optical rotatory power as well as the transmission. Herein, conditions for possessing nondispersive optical activity are derived based on a Lagrangian model for general bilayer chiral metamaterials, and the validity is experimentally confirmed in a microwave regime. It is shown that large nondispersive optical activity can be realized in bilayer chiral metamaterials where metallic apertures are arranged in each layer with high-rotational symmetry and the off-diagonal terms of the magnetic interlayer coupling tensor are nonzero while the electric counterparts are eliminated. In stark contrast to most previous chiral metamaterials, a nonzero constant polarization rotation angle is observed at the quasi-static limit, which manifests the unique nonresonant characteristic of the proposed magnetically coupled bilayer chiral metamaterials. In addition to the geometrical controllability, the amount of polarization rotation and transmission bandwidth can be further increased by stacking magnetically coupled bilayer chiral metamaterials.
机译:通过模仿自然存在的手性材料的破碎镜像对称性,并利用更强的磁电耦合,过去十年来,在手性超材料中实现了大的光学活性。然而,到目前为止,大多数手性超材料由于其共振响应而表现出高度分散的光学活性,这不可避免地导致了光旋转功率和透射率方面的窄工作带宽。在此,基于普通双层手性超材料的拉格朗日模型推导具有非分散光学活性的条件,并且在微波条件下通过实验确认了有效性。结果表明,在双层手性超材料中可以实现大的非色散光学活性,该双层手性超材料中的金属孔以高旋转对称性排列在每一层中,并且磁性层间耦合张量的非对角线项不为零,而消除了电气对应物。与大多数以前的手性超材料形成鲜明对比的是,在准静态极限处观察到非零的恒定极化旋转角,这表明了所提出的磁耦合双层手性超材料的独特的非共振特性。除了几何可控性之外,通过堆叠磁耦合双层手性超材料可以进一步增加极化旋转量和传输带宽。

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